首页> 外文会议>Eleventh Technical Conference on Proceedings of the American Society for Composites October 7-9, 1996 Atlanta, Georgia >Frequency Effects on Fatigue Behavior of a Unidirectional Metal Matrix Compsite at Elevated Temperature
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Frequency Effects on Fatigue Behavior of a Unidirectional Metal Matrix Compsite at Elevated Temperature

机译:频率对高温单向金属基复合材料疲劳行为的影响

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Metal Matrix Composites (MMCs) have great potential for a variety of aerspace applications, but they must be better understood before they can be incorporated into the advanced aerospace ocmponents. Despite the many studies that have contributed to the understanding of fatigue response of titanium alloy MMCs, a few have studied the effects of cyclic load frequency. This research examined the fatigue response and life of unidirectional SCS-6/Ti-6-4 under tension-tesnion, load controlled conditon at different temperatures and frequencies. Specimens were cycled using the load-controlled mode at frequencies of 0.01 Hz, 0.1 Hz, 1 Hz and 10 Hz under isothermal conditions (23 deg C, 370 deg C, 427 deg C and 538 deg C). The macroscopic response (i.e., trends in the mean strain and modulus) revealed that specimens cycled at lower stress levels and higher frequencies experimenced decreasing laminate stiffness with cycling, typical of a response dominated by matrix damage. On the other hand, specimens cycled at higher stress levels and/or slower frequencies showed increasing strain and constant modulus histories during fatigue, which is indicative of a response domainated by fiber damage. Plost of test frequency versus cycles to failure showe dthat fatigue life was more cycle-dependent at higher frequencies and more time-dependent at lower frequencies. Comparisons of tests under different isothermal temperatures showed that these frequency effects were magnified as temperature increased.
机译:金属基复合材料(MMC)在各种航空航天应用中具有巨大潜力,但是在将它们掺入先进的航空航天润滑剂之前必须对其有更好的了解。尽管有许多研究有助于理解钛合金MMC的疲劳响应,但仍有一些研究了循环负载频率的影响。这项研究检查了单向SCS-6 / Ti-6-4在不同温度和频率下的张力-张力,载荷控制条件下的疲劳响应和寿命。在等温条件下(23摄氏度,370摄氏度,427摄氏度和538摄氏度),使用负载控制模式以0.01 Hz,0.1 Hz,1 Hz和10 Hz的频率对样品进行循环。宏观响应(即平均应变和模量的趋势)表明,在较低的应力水平和较高的频率下循环的样品经历了随着循环而降低的层压板刚度,这是典型的以基质破坏为主的反应。另一方面,以较高的应力水平和/或较低的频率循环的样品在疲劳过程中显示出增加的应变和恒定的模量历史,这表明由纤维损伤引起的响应。测试频率与失效周期之间的关系表明,疲劳寿命在较高频率下更多地取决于循环,而在较低频率下更多地取决于时间。在不同的等温温度下进行的测试比较表明,这些频率影响随着温度的升高而放大。

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